Method To Evaluate Aircraft Passenger Seats For The Test Requirements Of 14 Cfr Part 25 Appendix F Parts Iv And V PDF Download

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Method to Evaluate Aircraft Passenger Seats for the Test Requirements of 14 CFR Part 25 Appendix F, Parts IV and V

Method to Evaluate Aircraft Passenger Seats for the Test Requirements of 14 CFR Part 25 Appendix F, Parts IV and V
Author: Aircraft SEAT Committee
Publisher:
Total Pages: 0
Release: 2017
Genre:
ISBN:

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This SAE Aerospace Recommended Practice (ARP) is only applicable to 14 CFR part 25 Transport Airplane passenger seats. This document provides an approach for determining which parts on aircraft seats are required to meet the test requirements of 14 CFR part 25 Appendix F, Parts IV and V. Such materials are referred to as Heat Release Special Conditions (HRSC) compliant]. Additionally, it is recommended to use HRSC compliant materials in applications where not required.Independent furniture related to seat installations is outside the scope of this document. The SAE Aircraft Seat Committee developed and approved Rev new of ARP6199 in 2012, with the goal of providing the seat industry with one set of seat Heat Release Special Conditions (HRSC) requirements. Since its approval, ARP6199 has not been utilized by all OEMs, as originally envisioned. The previous version of ARP6199 required more clarity and some modification to be harmonized. This version presents an updated common criteria for determining which panels on the seat must be evaluated and substantiated.


Method to Evaluate Aircraft Passenger Seats for the Test Requirements of 14CFR Part 25 Appendix F, Parts IV & V

Method to Evaluate Aircraft Passenger Seats for the Test Requirements of 14CFR Part 25 Appendix F, Parts IV & V
Author: Aircraft SEAT Committee
Publisher:
Total Pages: 0
Release: 2012
Genre:
ISBN:

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This SAE Aerospace Recommended Practice (ARP) provides an approach for determining which parts on aircraft seats are non-traditional, large, non-metallic panels that need to meet the test requirements of 14CFR Part 25 Appendix F, Parts IV & V.Independent furniture related to seat installations is outside the scope of this document. Commencing in 2007, regulatory agencies began issuing rulemaking related to heat release and smoke density (via special conditions) for seats on various model airplanes with non-traditional, large, non-metallic panels that would affect survivability during a post-crash fire. A common criterion for determining which panels on the seat must be evaluated and then substantiated to these requirements is needed.


Method to Evaluate Passenger and Flight Attendant Seats for the Test Requirements of 14 CFR Part 25 Appendix F, Parts IV and V

Method to Evaluate Passenger and Flight Attendant Seats for the Test Requirements of 14 CFR Part 25 Appendix F, Parts IV and V
Author: Aircraft SEAT Committee
Publisher:
Total Pages: 0
Release: 2022
Genre:
ISBN:

Download Method to Evaluate Passenger and Flight Attendant Seats for the Test Requirements of 14 CFR Part 25 Appendix F, Parts IV and V Book in PDF, ePub and Kindle

This SAE Aerospace Recommended Practice (ARP) is only applicable to 14 CFR Part 25 transport airplane passenger and flight attendant seats. This document provides an approach for determining which parts on aircraft seats are required to meet the test requirements of 14 CFR Part 25 Appendix F, Parts IV and V. Additionally, it is recommended to use materials that meets the requirements of 14 CFR Part 25 Appendix F, Parts IV and V in applications where not required.Independent furniture installations related to seat installations are outside the scope of this document. The SAE Aircraft Seat Committee developed and approved the original version and revision A of ARP6199 in 2012 and 2017, respectively, with the goal of providing the seat industry with one set of seat heat release special conditions (HRSC) requirements. ARP6199B provides more clarity and some modifications to the existing guidance and presents an updated common criteria for determining which panels on the seat must be evaluated and substantiated.


Federal Register

Federal Register
Author:
Publisher:
Total Pages: 316
Release: 2012-11
Genre: Delegated legislation
ISBN:

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A Methodology for Aircraft Seat Certification by Dynamic Finite Element Analysis

A Methodology for Aircraft Seat Certification by Dynamic Finite Element Analysis
Author: Prasannakumar Bhonge
Publisher:
Total Pages: 163
Release: 2008
Genre: Electronic dissertations
ISBN:

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Dynamic aircraft seat regulations are identified in the Code of Federal Regulations 1(CFR), 14 CFR Parts 23.562 and 25.562 for crashworthy evaluation of a seat in a dynamic environment. The regulations specify full-scale dynamic testing on production seats. The dynamic tests are designed to demonstrate the structural integrity of the seat to withstand an emergency landing event and occupant safety. The Society of Automotive Engineers (SAE) standard, AS8049, supports detailed information on dynamic seat testing procedures and acceptance criteria. Full-scale dynamic testing in support of certification is expensive and repeated testing due to failures drastically increases the expense. Involvement of impact environments, flexibility in interior configurations and complexity of seat engineering designs make analysis of these problems quite complex, so that classical hand calculations are practically impossible. Efforts have been made to improve the occupant safety and to reduce the testing costs through substantiation via computer modeling analysis techniques. Development in Dynamic Finite Element Analysis (DFEA) methodology helps the aircraft industry in designing and certifying seats and other interiors more economically and confidently. The objective of this study is to provide a methodology for aircraft seat certification by using DFEA techniques. The goal of the Finite Element Analysis (FEA) in product development is not only to design a seat but also to substantiate the certification tests or replace the certification tests. The case of a certification by substantiation tests increases the necessity of validation of the Finite Element model. The US government Advisory Circular (AC) 20-146 demonstrates the methodology for dynamic seat "Certification by Analysis" for use in Parts 23, 25, 27 and 29 airplanes and rotorcraft. This AC provides guidance on how to validate the computer model and under what conditions the model may be used in support of certification or Technical Standard Order (TSO) approval/ authorization and same validation process utilizes in this research work. In the methodology of this dissertation, the seat certification process for business jet aircraft is defined in 3 stages: 1. Evaluation of seat critical options by using a simple FE - one-dimensional (1D) seat model, 2. Non linear FE analysis of seat worst loading condition and validation with the test results, 3. Substantiation of certification test or tests by using validated FE model and updation of the certification plan. Best FE modeling practices for dynamic aircraft seats, material testing procedures and component validation are presented here using nonlinear FE codes such as the LS-DYNA, with two case studies of aircraft passenger seats. Case 1 - Combined Vertical / Longitudinal velocity change dynamic test condition (15g side facing passenger seat - Part 23). Case 2 - Longitudinal velocity change dynamic test condition, (16g forward facing business jet passenger seat - Part 25). Comparisons of the DFEA and test results indicate reasonable correlations, establishing confidence in the DFEA methodology.


Fire Safety of Passenger Trains

Fire Safety of Passenger Trains
Author: Richard D. Peacock
Publisher:
Total Pages: 212
Release: 1999
Genre: Calorimeters
ISBN:

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Performance Standard for Seats in Civil Rotorcraft, Transport Aircraft, and General Aviation Aircraft

Performance Standard for Seats in Civil Rotorcraft, Transport Aircraft, and General Aviation Aircraft
Author: Aircraft SEAT Committee
Publisher:
Total Pages: 0
Release: 1997
Genre:
ISBN:

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This SAE Aerospace Standard (AS) defines minimum performance standards, qualification requirements, and minimum documentation requirements for passenger and crew seats in civil rotorcraft, transport aircraft, and general aviation aircraft. The goal is to achieve comfort, durability, and occupant protection under normal operational loads and to define test and evaluation criteria to demonstrate occupant protection when a seat/occupant/restraint system is subjected to statically applied ultimate loads and to dynamic impact test conditions set forth in the applicable Federal Regulations 14 CFR Part 23, Part 25, Part 27, or Part 29.This document also provides guidance for design by enumerating certain design goals to enhance comfort, serviceability, and safety. Guidance for test procedures, measurements, equipment, and interpretation of results is presented to promote uniform techniques and to achieve acceptable data.While this document addresses system performance, responsibility for the seating system is divided between the seat supplier and the installation applicant. The seat supplier's responsibility consists of meeting all the seat system performance requirements and obtaining and supplying to the installation applicant all the data prescribed by this document. The installation applicant has the ultimate system responsibility in assuring that all requirements for safe seat installation have been met.


Transport Airplane Cabin Interiors

Transport Airplane Cabin Interiors
Author: United States. Federal Aviation Administration
Publisher:
Total Pages: 210
Release: 1991
Genre: Aircraft cabins
ISBN:

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Analytical Methods for Aircraft Seat Design and Evaluation

Analytical Methods for Aircraft Seat Design and Evaluation
Author: Aircraft SEAT Committee
Publisher:
Total Pages: 0
Release: 2012
Genre:
ISBN:

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This SAE Aerospace Recommended Practice (ARP) defines a means of assessing the credibility of computer models of aircraft seating systems used to simulate dynamic impact conditions set forth in Federal Regulations 14 CFR Part 23.562, 25.562, 27.562, and 29.562. The ARP is applicable to lumped mass and detailed finite element seat models. This includes specifications and performance criteria for aviation specific virtual anthropomorphic test devices (v-ATDs). A methodology to evaluate the degree of correlation between a seat model and dynamic impact tests is recommended. This ARP also provides testing and modeling best practices specific to support the implementation of analytical models of aircraft seat systems. Supporting information within this document includes procedures for the quantitative comparison of test and simulation results, as well as test reports for data generated to support the development of v-ATDs and a sample report. For this revision, Section 4, Seat System Validation is held in reserve. Analytical modeling tools have been developed to facilitate design and dynamic evaluation of aircraft seating systems. A principal goal of these modeling efforts is to use the model to accurately predict the results of a physical test. An accurate model could potentially be used to evaluate the seating system in lieu of physical test, saving both development time and cost. A means of establishing confidence in this predictive ability is needed. Towards that end, this document has been developed to define specifications for numerical ATD (Anthropometric Test Device) models suitable for aviation impact test simulations, provide procedures for validation of both lumped mass and detailed finite element seat models, and convey the current best practices to assist engineering analysts in developing efficient, accurate models.


Primary Category Aircraft

Primary Category Aircraft
Author: United States. Federal Aviation Administration
Publisher:
Total Pages: 16
Release: 1994
Genre: Airplanes
ISBN:

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